Quantum state transfer and periodicity in discrete-time quantum walks under non--Markovian dephasing noise

Fuente: arXiv
Guardado en:
Detalles Bibliográficos
Autores principales: Rani, Monika, Dutta, Supriyo, Banerjee, Subhashish
Formato: Preprint
Publicado: 2025
Materias:
Acceso en línea:
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
_version_ 1866911298464251904
author Rani, Monika
Dutta, Supriyo
Banerjee, Subhashish
author_facet Rani, Monika
Dutta, Supriyo
Banerjee, Subhashish
contents In quantum communication, quantum state transfer from one location to another in a quantum network plays a prominent role, where the impact of noise could be crucial. The idea of state transfer can be fruitfully associated with quantum walk on graphs. We investigate the consequences of non-Markovian quantum noises on periodicity and state transfer induced by a discrete-time quantum walk on graphs, governed by the Grover coin operator. Different bipartite graphs, such as the path graph, cycle graph, star graph, and complete bipartite graph, present periodicity and state transfer in a discrete-time quantum walk depending on the topology of the graph. We investigate the effect of quantum non-Markovian dephasing noises, particularly quantum non-Markovian Random Telegraph Noise (RTN) and modified non-Markovian Ornstein-Uhlenbeck Noise (OUN) on state transfer and periodicity. We demonstrate how the RTN and OUN noises allow state transfer and periodicity for a finite number of steps in a quantum walk. Our investigation brings out the feasibility of state transfer in a noisy environment.
format Preprint
id arxiv_https___arxiv_org_abs_2506_24066
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Quantum state transfer and periodicity in discrete-time quantum walks under non--Markovian dephasing noise
Rani, Monika
Dutta, Supriyo
Banerjee, Subhashish
Quantum Physics
In quantum communication, quantum state transfer from one location to another in a quantum network plays a prominent role, where the impact of noise could be crucial. The idea of state transfer can be fruitfully associated with quantum walk on graphs. We investigate the consequences of non-Markovian quantum noises on periodicity and state transfer induced by a discrete-time quantum walk on graphs, governed by the Grover coin operator. Different bipartite graphs, such as the path graph, cycle graph, star graph, and complete bipartite graph, present periodicity and state transfer in a discrete-time quantum walk depending on the topology of the graph. We investigate the effect of quantum non-Markovian dephasing noises, particularly quantum non-Markovian Random Telegraph Noise (RTN) and modified non-Markovian Ornstein-Uhlenbeck Noise (OUN) on state transfer and periodicity. We demonstrate how the RTN and OUN noises allow state transfer and periodicity for a finite number of steps in a quantum walk. Our investigation brings out the feasibility of state transfer in a noisy environment.
title Quantum state transfer and periodicity in discrete-time quantum walks under non--Markovian dephasing noise
topic Quantum Physics
url https://arxiv.org/abs/2506.24066